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6 Commits
2025.6.0
...
add_api_st
| Author | SHA1 | Date | |
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c6858163a7 | ||
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0a1f3e813c | ||
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663f38d2ec | ||
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f0b311f839 | ||
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1c06137ae0 | ||
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ab415eb3de |
@@ -3,6 +3,9 @@
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#include <cerrno>
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#include <cinttypes>
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#include <utility>
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#include <algorithm>
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#include <map>
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#include <string>
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#include "esphome/components/network/util.h"
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#include "esphome/core/application.h"
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#include "esphome/core/entity_base.h"
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@@ -85,6 +88,9 @@ void APIConnection::start() {
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// This ensures the first ping happens after the keepalive period
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this->next_ping_retry_ = this->last_traffic_ + KEEPALIVE_TIMEOUT_MS;
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// Pass stats collection to the helper for detailed timing
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this->helper_->set_section_stats(&this->section_stats_);
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APIError err = this->helper_->init();
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if (err != APIError::OK) {
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on_fatal_error();
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@@ -111,6 +117,9 @@ APIConnection::~APIConnection() {
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}
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void APIConnection::loop() {
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// Measure total time for entire loop function
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const uint32_t loop_start_time = millis();
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if (this->remove_)
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return;
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@@ -128,15 +137,30 @@ void APIConnection::loop() {
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return;
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}
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const uint32_t now = millis();
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uint32_t start_time;
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uint32_t duration;
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// Section: Helper Loop
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start_time = millis();
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APIError err = this->helper_->loop();
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duration = millis() - start_time;
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this->section_stats_["helper_loop"].record_time(duration);
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if (err != APIError::OK) {
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on_fatal_error();
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ESP_LOGW(TAG, "%s: Socket operation failed: %s errno=%d", this->client_combined_info_.c_str(),
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api_error_to_str(err), errno);
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return;
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}
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// Section: Read Packet
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start_time = millis();
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ReadPacketBuffer buffer;
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err = this->helper_->read_packet(&buffer);
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duration = millis() - start_time;
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this->section_stats_["read_packet"].record_time(duration);
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if (err == APIError::WOULD_BLOCK) {
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// pass
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} else if (err != APIError::OK) {
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@@ -152,28 +176,42 @@ void APIConnection::loop() {
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return;
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} else {
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this->last_traffic_ = App.get_loop_component_start_time();
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// read a packet
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// Section: Process Message
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start_time = millis();
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if (buffer.data_len > 0) {
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this->read_message(buffer.data_len, buffer.type, &buffer.container[buffer.data_offset]);
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} else {
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this->read_message(0, buffer.type, nullptr);
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}
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duration = millis() - start_time;
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this->section_stats_["process_message"].record_time(duration);
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if (this->remove_)
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return;
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}
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// Section: Process Queue
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start_time = millis();
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if (!this->deferred_message_queue_.empty() && this->helper_->can_write_without_blocking()) {
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this->deferred_message_queue_.process_queue();
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}
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duration = millis() - start_time;
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this->section_stats_["process_queue"].record_time(duration);
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// Section: Iterator Advance
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start_time = millis();
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if (!this->list_entities_iterator_.completed())
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this->list_entities_iterator_.advance();
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if (!this->initial_state_iterator_.completed() && this->list_entities_iterator_.completed())
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this->initial_state_iterator_.advance();
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duration = millis() - start_time;
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this->section_stats_["iterator_advance"].record_time(duration);
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// Section: Keepalive
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start_time = millis();
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static uint8_t max_ping_retries = 60;
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static uint16_t ping_retry_interval = 1000;
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const uint32_t now = App.get_loop_component_start_time();
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if (this->sent_ping_) {
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// Disconnect if not responded within 2.5*keepalive
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if (now - this->last_traffic_ > (KEEPALIVE_TIMEOUT_MS * 5) / 2) {
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@@ -199,8 +237,12 @@ void APIConnection::loop() {
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}
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}
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}
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duration = millis() - start_time;
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this->section_stats_["keepalive"].record_time(duration);
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#ifdef USE_ESP32_CAMERA
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// Section: Camera
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start_time = millis();
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if (this->image_reader_.available() && this->helper_->can_write_without_blocking()) {
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// Message will use 8 more bytes than the minimum size, and typical
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// MTU is 1500. Sometimes users will see as low as 1460 MTU.
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@@ -239,8 +281,12 @@ void APIConnection::loop() {
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this->image_reader_.return_image();
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}
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}
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duration = millis() - start_time;
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this->section_stats_["camera"].record_time(duration);
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#endif
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// Section: State Subscriptions
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start_time = millis();
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if (state_subs_at_ != -1) {
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const auto &subs = this->parent_->get_state_subs();
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if (state_subs_at_ >= (int) subs.size()) {
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@@ -256,6 +302,24 @@ void APIConnection::loop() {
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}
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}
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}
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duration = millis() - start_time;
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this->section_stats_["state_subs"].record_time(duration);
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// Log stats periodically
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if (this->stats_enabled_) {
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// If next_stats_log_ is 0, initialize it
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if (this->next_stats_log_ == 0) {
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this->next_stats_log_ = now + this->stats_log_interval_;
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} else if (now >= this->next_stats_log_) {
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this->log_section_stats_();
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this->reset_section_stats_();
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this->next_stats_log_ = now + this->stats_log_interval_;
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}
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}
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// Record total loop execution time
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const uint32_t total_loop_duration = millis() - loop_start_time;
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this->section_stats_["total_loop"].record_time(total_loop_duration);
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}
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std::string get_default_unique_id(const std::string &component_type, EntityBase *entity) {
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@@ -1632,8 +1696,14 @@ bool APIConnection::try_to_clear_buffer(bool log_out_of_space) {
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return false;
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if (this->helper_->can_write_without_blocking())
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return true;
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// Track try_to_clear_buffer time
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const uint32_t start_time = millis();
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delay(0);
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APIError err = this->helper_->loop();
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const uint32_t duration = millis() - start_time;
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this->section_stats_["try_to_clear_buffer"].record_time(duration);
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if (err != APIError::OK) {
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on_fatal_error();
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ESP_LOGW(TAG, "%s: Socket operation failed: %s errno=%d", this->client_combined_info_.c_str(),
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@@ -1648,11 +1718,17 @@ bool APIConnection::try_to_clear_buffer(bool log_out_of_space) {
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return false;
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}
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bool APIConnection::send_buffer(ProtoWriteBuffer buffer, uint32_t message_type) {
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// Track send_buffer time
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const uint32_t start_time = millis();
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if (!this->try_to_clear_buffer(message_type != 29)) { // SubscribeLogsResponse
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return false;
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}
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uint32_t write_start = millis();
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APIError err = this->helper_->write_protobuf_packet(message_type, buffer);
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uint32_t write_duration = millis() - write_start;
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this->section_stats_["write_packet"].record_time(write_duration);
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if (err == APIError::WOULD_BLOCK)
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return false;
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if (err != APIError::OK) {
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@@ -1665,6 +1741,11 @@ bool APIConnection::send_buffer(ProtoWriteBuffer buffer, uint32_t message_type)
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}
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return false;
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}
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// Measure total send_buffer function time
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uint32_t total_duration = millis() - start_time;
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this->section_stats_["send_buffer_total"].record_time(total_duration);
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// Do not set last_traffic_ on send
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return true;
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}
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@@ -1681,6 +1762,90 @@ void APIConnection::on_fatal_error() {
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this->remove_ = true;
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}
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void APIConnection::log_section_stats_() {
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const char *STATS_TAG = "api.stats";
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ESP_LOGI(STATS_TAG, "Logging API section stats now (current time: %" PRIu32 ", scheduled time: %" PRIu32 ")",
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millis(), this->next_stats_log_);
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ESP_LOGI(STATS_TAG, "Stats collection status: enabled=%d, sections=%zu", this->stats_enabled_,
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this->section_stats_.size());
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// Check if we have minimal data
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bool has_data = false;
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for (const auto &it : this->section_stats_) {
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if (it.second.get_period_count() > 0) {
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has_data = true;
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break;
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}
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}
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if (has_data) {
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size_t helper_count = 0;
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size_t read_count = 0;
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size_t total_count = 0;
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if (this->section_stats_.count("helper_loop") > 0)
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helper_count = this->section_stats_["helper_loop"].get_period_count();
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if (this->section_stats_.count("read_packet") > 0)
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read_count = this->section_stats_["read_packet"].get_period_count();
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if (this->section_stats_.count("total_loop") > 0)
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total_count = this->section_stats_["total_loop"].get_period_count();
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ESP_LOGI(STATS_TAG, "Record count for key sections: helper_loop=%zu, read_packet=%zu, total_loop=%zu", helper_count,
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read_count, total_count);
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}
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ESP_LOGI(STATS_TAG, "API Connection Section Runtime Statistics");
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ESP_LOGI(STATS_TAG, "Period stats (last %" PRIu32 "ms):", this->stats_log_interval_);
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// First collect stats we want to display
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std::vector<std::pair<std::string, const APISectionStats *>> stats_to_display;
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for (const auto &it : this->section_stats_) {
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const APISectionStats &stats = it.second;
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if (stats.get_period_count() > 0) {
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stats_to_display.push_back({it.first, &stats});
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}
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}
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// Sort by period runtime (descending)
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std::sort(stats_to_display.begin(), stats_to_display.end(), [](const auto &a, const auto &b) {
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return a.second->get_period_time_ms() > b.second->get_period_time_ms();
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});
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// Log top components by period runtime
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for (const auto &it : stats_to_display) {
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const std::string §ion = it.first;
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const APISectionStats *stats = it.second;
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ESP_LOGI(STATS_TAG, " %s: count=%" PRIu32 ", avg=%.2fms, max=%" PRIu32 "ms, total=%" PRIu32 "ms", section.c_str(),
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stats->get_period_count(), stats->get_period_avg_time_ms(), stats->get_period_max_time_ms(),
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stats->get_period_time_ms());
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}
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// Log total stats since boot
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ESP_LOGI(STATS_TAG, "Total stats (since boot):");
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// Re-sort by total runtime for all-time stats
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std::sort(stats_to_display.begin(), stats_to_display.end(),
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[](const auto &a, const auto &b) { return a.second->get_total_time_ms() > b.second->get_total_time_ms(); });
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for (const auto &it : stats_to_display) {
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const std::string §ion = it.first;
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const APISectionStats *stats = it.second;
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ESP_LOGI(STATS_TAG, " %s: count=%" PRIu32 ", avg=%.2fms, max=%" PRIu32 "ms, total=%" PRIu32 "ms", section.c_str(),
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stats->get_total_count(), stats->get_total_avg_time_ms(), stats->get_total_max_time_ms(),
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stats->get_total_time_ms());
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}
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ESP_LOGD(STATS_TAG, "Resetting API section stats, sections count: %zu", this->section_stats_.size());
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}
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void APIConnection::reset_section_stats_() {
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for (auto &it : this->section_stats_) {
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it.second.reset_period_stats();
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}
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}
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} // namespace api
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} // namespace esphome
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#endif
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@@ -9,8 +9,12 @@
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#include "esphome/core/application.h"
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#include "esphome/core/component.h"
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#include "esphome/core/entity_base.h"
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#include "esphome/core/helpers.h"
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#include "esphome/core/log.h"
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#include <vector>
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#include <map>
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#include <string>
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namespace esphome {
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namespace api {
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@@ -64,6 +68,9 @@ class APIConnection : public APIServerConnection {
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APIConnection(std::unique_ptr<socket::Socket> socket, APIServer *parent);
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virtual ~APIConnection();
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// Use the APISectionStats from api_frame_helper.h to avoid duplication
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using APISectionStats = ::esphome::api::APISectionStats;
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void start();
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void loop();
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@@ -556,6 +563,14 @@ class APIConnection : public APIServerConnection {
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InitialStateIterator initial_state_iterator_;
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ListEntitiesIterator list_entities_iterator_;
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int state_subs_at_ = -1;
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// API loop section performance statistics
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std::map<std::string, APISectionStats> section_stats_;
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uint32_t stats_log_interval_{60000}; // 60 seconds default
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uint32_t next_stats_log_{0};
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bool stats_enabled_{true};
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void log_section_stats_();
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void reset_section_stats_();
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};
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} // namespace api
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@@ -111,7 +111,12 @@ APIError APIFrameHelper::write_raw_(const struct iovec *iov, int iovcnt) {
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}
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// Try to send directly if no buffered data
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uint32_t write_start = millis();
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ssize_t sent = this->socket_->writev(iov, iovcnt);
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uint32_t write_duration = millis() - write_start;
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if (write_duration > 0 && section_stats_) {
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(*section_stats_)["write_packet.socket_writev"].record_time(write_duration);
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}
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if (sent == -1) {
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if (errno == EWOULDBLOCK || errno == EAGAIN) {
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@@ -160,7 +165,12 @@ APIError APIFrameHelper::try_send_tx_buf_() {
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SendBuffer &front_buffer = this->tx_buf_.front();
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// Try to send the remaining data in this buffer
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uint32_t write_start = millis();
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ssize_t sent = this->socket_->write(front_buffer.current_data(), front_buffer.remaining());
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uint32_t write_duration = millis() - write_start;
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if (write_duration > 0 && section_stats_) {
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(*section_stats_)["send_buffer_total.socket_write"].record_time(write_duration);
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}
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if (sent == -1) {
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if (errno != EWOULDBLOCK && errno != EAGAIN) {
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@@ -311,7 +321,12 @@ APIError APINoiseFrameHelper::try_read_frame_(ParsedFrame *frame) {
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if (rx_header_buf_len_ < 3) {
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// no header information yet
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uint8_t to_read = 3 - rx_header_buf_len_;
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uint32_t socket_start = millis();
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ssize_t received = this->socket_->read(&rx_header_buf_[rx_header_buf_len_], to_read);
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uint32_t socket_duration = millis() - socket_start;
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if (socket_duration > 0 && section_stats_) {
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(*section_stats_)["read_packet.socket_read_header"].record_time(socket_duration);
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}
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if (received == -1) {
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if (errno == EWOULDBLOCK || errno == EAGAIN) {
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return APIError::WOULD_BLOCK;
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@@ -352,13 +367,23 @@ APIError APINoiseFrameHelper::try_read_frame_(ParsedFrame *frame) {
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// reserve space for body
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if (rx_buf_.size() != msg_size) {
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uint32_t resize_start = millis();
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rx_buf_.resize(msg_size);
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uint32_t resize_duration = millis() - resize_start;
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if (resize_duration > 0 && section_stats_) {
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(*section_stats_)["read_packet.buffer_resize"].record_time(resize_duration);
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}
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}
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if (rx_buf_len_ < msg_size) {
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// more data to read
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uint16_t to_read = msg_size - rx_buf_len_;
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uint32_t socket_start = millis();
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ssize_t received = this->socket_->read(&rx_buf_[rx_buf_len_], to_read);
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uint32_t socket_duration = millis() - socket_start;
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if (socket_duration > 0 && section_stats_) {
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(*section_stats_)["read_packet.socket_read_body"].record_time(socket_duration);
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}
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if (received == -1) {
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if (errno == EWOULDBLOCK || errno == EAGAIN) {
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return APIError::WOULD_BLOCK;
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@@ -554,7 +579,15 @@ void APINoiseFrameHelper::send_explicit_handshake_reject_(const std::string &rea
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APIError APINoiseFrameHelper::read_packet(ReadPacketBuffer *buffer) {
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int err;
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APIError aerr;
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uint32_t start_time, duration;
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// Track state_action timing
|
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start_time = millis();
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aerr = state_action_();
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duration = millis() - start_time;
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||||
if (duration > 0 && section_stats_) {
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(*section_stats_)["read_packet.state_action"].record_time(duration);
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}
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if (aerr != APIError::OK) {
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return aerr;
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}
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@@ -563,15 +596,27 @@ APIError APINoiseFrameHelper::read_packet(ReadPacketBuffer *buffer) {
|
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return APIError::WOULD_BLOCK;
|
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}
|
||||
|
||||
// Track frame reading timing
|
||||
start_time = millis();
|
||||
ParsedFrame frame;
|
||||
aerr = try_read_frame_(&frame);
|
||||
duration = millis() - start_time;
|
||||
if (duration > 0 && section_stats_) {
|
||||
(*section_stats_)["read_packet.try_read_frame"].record_time(duration);
|
||||
}
|
||||
if (aerr != APIError::OK)
|
||||
return aerr;
|
||||
|
||||
// Track decryption timing
|
||||
start_time = millis();
|
||||
NoiseBuffer mbuf;
|
||||
noise_buffer_init(mbuf);
|
||||
noise_buffer_set_inout(mbuf, frame.msg.data(), frame.msg.size(), frame.msg.size());
|
||||
err = noise_cipherstate_decrypt(recv_cipher_, &mbuf);
|
||||
duration = millis() - start_time;
|
||||
if (duration > 0 && section_stats_) {
|
||||
(*section_stats_)["read_packet.decrypt"].record_time(duration);
|
||||
}
|
||||
if (err != 0) {
|
||||
state_ = State::FAILED;
|
||||
HELPER_LOG("noise_cipherstate_decrypt failed: %s", noise_err_to_str(err).c_str());
|
||||
@@ -836,7 +881,12 @@ APIError APIPlaintextFrameHelper::try_read_frame_(ParsedFrame *frame) {
|
||||
// there is no data on the wire (which is the common case).
|
||||
// This results in faster failure detection compared to
|
||||
// attempting to read multiple bytes at once.
|
||||
uint32_t socket_start = millis();
|
||||
ssize_t received = this->socket_->read(&data, 1);
|
||||
uint32_t socket_duration = millis() - socket_start;
|
||||
if (socket_duration > 0 && section_stats_) {
|
||||
(*section_stats_)["read_packet.socket_read_header"].record_time(socket_duration);
|
||||
}
|
||||
if (received == -1) {
|
||||
if (errno == EWOULDBLOCK || errno == EAGAIN) {
|
||||
return APIError::WOULD_BLOCK;
|
||||
@@ -926,13 +976,23 @@ APIError APIPlaintextFrameHelper::try_read_frame_(ParsedFrame *frame) {
|
||||
|
||||
// reserve space for body
|
||||
if (rx_buf_.size() != rx_header_parsed_len_) {
|
||||
uint32_t resize_start = millis();
|
||||
rx_buf_.resize(rx_header_parsed_len_);
|
||||
uint32_t resize_duration = millis() - resize_start;
|
||||
if (resize_duration > 0 && section_stats_) {
|
||||
(*section_stats_)["read_packet.buffer_resize"].record_time(resize_duration);
|
||||
}
|
||||
}
|
||||
|
||||
if (rx_buf_len_ < rx_header_parsed_len_) {
|
||||
// more data to read
|
||||
uint16_t to_read = rx_header_parsed_len_ - rx_buf_len_;
|
||||
uint32_t socket_start = millis();
|
||||
ssize_t received = this->socket_->read(&rx_buf_[rx_buf_len_], to_read);
|
||||
uint32_t socket_duration = millis() - socket_start;
|
||||
if (socket_duration > 0 && section_stats_) {
|
||||
(*section_stats_)["read_packet.socket_read_body"].record_time(socket_duration);
|
||||
}
|
||||
if (received == -1) {
|
||||
if (errno == EWOULDBLOCK || errno == EAGAIN) {
|
||||
return APIError::WOULD_BLOCK;
|
||||
@@ -966,13 +1026,20 @@ APIError APIPlaintextFrameHelper::try_read_frame_(ParsedFrame *frame) {
|
||||
}
|
||||
APIError APIPlaintextFrameHelper::read_packet(ReadPacketBuffer *buffer) {
|
||||
APIError aerr;
|
||||
uint32_t start_time, duration;
|
||||
|
||||
if (state_ != State::DATA) {
|
||||
return APIError::WOULD_BLOCK;
|
||||
}
|
||||
|
||||
// Track frame reading timing
|
||||
start_time = millis();
|
||||
ParsedFrame frame;
|
||||
aerr = try_read_frame_(&frame);
|
||||
duration = millis() - start_time;
|
||||
if (duration > 0 && section_stats_) {
|
||||
(*section_stats_)["read_packet.try_read_frame"].record_time(duration);
|
||||
}
|
||||
if (aerr != APIError::OK) {
|
||||
if (aerr == APIError::BAD_INDICATOR) {
|
||||
// Make sure to tell the remote that we don't
|
||||
|
||||
@@ -13,10 +13,71 @@
|
||||
|
||||
#include "api_noise_context.h"
|
||||
#include "esphome/components/socket/socket.h"
|
||||
#include <map>
|
||||
#include <string>
|
||||
|
||||
namespace esphome {
|
||||
namespace api {
|
||||
|
||||
// Forward declaration from api_connection.h
|
||||
class APIConnection;
|
||||
|
||||
// Stats class definition (copied from api_connection.h to avoid circular dependency)
|
||||
class APISectionStats {
|
||||
public:
|
||||
APISectionStats()
|
||||
: period_count_(0),
|
||||
total_count_(0),
|
||||
period_time_ms_(0),
|
||||
total_time_ms_(0),
|
||||
period_max_time_ms_(0),
|
||||
total_max_time_ms_(0) {}
|
||||
|
||||
void record_time(uint32_t duration_ms) {
|
||||
// Update period counters
|
||||
this->period_count_++;
|
||||
this->period_time_ms_ += duration_ms;
|
||||
if (duration_ms > this->period_max_time_ms_)
|
||||
this->period_max_time_ms_ = duration_ms;
|
||||
|
||||
// Update total counters
|
||||
this->total_count_++;
|
||||
this->total_time_ms_ += duration_ms;
|
||||
if (duration_ms > this->total_max_time_ms_)
|
||||
this->total_max_time_ms_ = duration_ms;
|
||||
}
|
||||
|
||||
void reset_period_stats() {
|
||||
this->period_count_ = 0;
|
||||
this->period_time_ms_ = 0;
|
||||
this->period_max_time_ms_ = 0;
|
||||
}
|
||||
|
||||
// Getters for period stats
|
||||
uint32_t get_period_count() const { return this->period_count_; }
|
||||
uint32_t get_period_time_ms() const { return this->period_time_ms_; }
|
||||
uint32_t get_period_max_time_ms() const { return this->period_max_time_ms_; }
|
||||
float get_period_avg_time_ms() const {
|
||||
return this->period_count_ > 0 ? static_cast<float>(this->period_time_ms_) / this->period_count_ : 0.0f;
|
||||
}
|
||||
|
||||
// Getters for total stats
|
||||
uint32_t get_total_count() const { return this->total_count_; }
|
||||
uint32_t get_total_time_ms() const { return this->total_time_ms_; }
|
||||
uint32_t get_total_max_time_ms() const { return this->total_max_time_ms_; }
|
||||
float get_total_avg_time_ms() const {
|
||||
return this->total_count_ > 0 ? static_cast<float>(this->total_time_ms_) / this->total_count_ : 0.0f;
|
||||
}
|
||||
|
||||
private:
|
||||
uint32_t period_count_;
|
||||
uint32_t total_count_;
|
||||
uint32_t period_time_ms_;
|
||||
uint32_t total_time_ms_;
|
||||
uint32_t period_max_time_ms_;
|
||||
uint32_t total_max_time_ms_;
|
||||
};
|
||||
|
||||
class ProtoWriteBuffer;
|
||||
|
||||
struct ReadPacketBuffer {
|
||||
@@ -85,6 +146,8 @@ class APIFrameHelper {
|
||||
}
|
||||
// Give this helper a name for logging
|
||||
void set_log_info(std::string info) { info_ = std::move(info); }
|
||||
// Set stats collection for detailed timing
|
||||
void set_section_stats(std::map<std::string, APISectionStats> *stats) { section_stats_ = stats; }
|
||||
virtual APIError write_protobuf_packet(uint16_t type, ProtoWriteBuffer buffer) = 0;
|
||||
// Get the frame header padding required by this protocol
|
||||
virtual uint8_t frame_header_padding() = 0;
|
||||
@@ -160,6 +223,9 @@ class APIFrameHelper {
|
||||
|
||||
// Common initialization for both plaintext and noise protocols
|
||||
APIError init_common_();
|
||||
|
||||
// Stats collection pointer - shared from APIConnection
|
||||
std::map<std::string, APISectionStats> *section_stats_{nullptr};
|
||||
};
|
||||
|
||||
#ifdef USE_API_NOISE
|
||||
|
||||
Reference in New Issue
Block a user